Journal of

GEOsciences

  (Formerly Journal of the Czech Geological Society)

Original paper

Jiří Sejkora, Jakub Kristek, Pavel Škácha, Zdeněk Dolníček

Uramphite from the Nová Ves pod Pleší (Czech Republic), the third world occurrence - description and vibrational spectroscopy

Journal of Geosciences, volume 69 (2024), issue 3, 173 - 182

DOI: http://doi.org/10.3190/jgeosci.395


  Abstract References Affiliations

Baker MR, Coutelot FM, Seaman JC (2019) Phosphate amendments for chemical immobilization of uranium in contaminated soil. Environ Int 129: 565-572
http://doi.org/10.1016/j.envint.2019.03.017

Baran EJ, Botto IL (1977) Die IR-Spektren von NH4UO2AsO4·3H2O und NH4UO2PO4·3H2O. Monat Chem 108: 781-790
http://doi.org/10.1007/BF00898041

Bartlett JR, Cooney RP (1989) On the determination of uranium-oxygen bond lengths in dioxouranium(VI) compounds by Raman spectroscopy. J Mol Struct 193: 295-300
http://doi.org/10.1016/0022-2860(89)80140-1

Burnham Ch W (1962) Lattice constant refinement. Carnegie Inst Washington Year Book 61: 132-135

Čejka J (1999) Infrared spectroscopy and thermal analysis of the uranyl minerals. In: Burns PC, Ewing RC (eds) Uranium: Mineralogy, Geochemistry and the Environment. Reviews in Mineralogy and Geochemistry 38. Mineral Soc Amer Geochem Soc, pp 521-622
http://doi.org/10.1515/9781501509193-017

Chukanov NV (2014) Infrared spectra of mineral species. Extended Library. Springer Dordrecht, pp 1-1726

Colomban P (2023) Vibrational characterization of the various forms of (solvated or unsolvated) mobile proton in the solid state. Advantages, limitations and open questions. Solid St Ionics 393: 116187
http://doi.org/10.1016/j.ssi.2023.116187

Colomban P, Velasco G (1983) La microionique, une autre approche de la miniaturisation. La Recherche 148: 1292-1295

Finch RJ, Murakami T (1999) Systematics and paragenesis of uranium minerals. In: Burns PC, Ewing RC (eds) Uranium: Mineralogy, Geochemistry and the Environment. Reviews in Mineralogy and Geochemistry 38. Mineral Soc Amer Geochem Soc, pp 91-179

Fitch AN, Fender BEF (1983) The structure of deuterated ammonium uranyl phosphate trihydrate, ND4UO2PO4·3D2O by powder neutron diffraction. Acta Crystallogr C39: 162-166

Foster RI, Kim KW, Lee K (2020) Uranyl phosphate (MUO2PO4, M= Na+, K+, NH4+) precipitation for uranium sequestering: formation and physicochemical characterisation. J Radioanal Nucl Chem 324: 1265-1273
http://doi.org/10.1007/s10967-020-07154-0

Frost RL, Sejkora J, Keeffe EC, Plášil J, Čejka J, Bahfenne S (2010) Raman spectroscopic study of the phosphate mineral churchite-(Y) YPO4· 2H2O. J Raman Spectrosc 41(2): 202-206
http://doi.org/10.1002/jrs.2347

Frost RL, Palmer SJ, Xi Y, Čejka J, Sejkora J, Plášil J (2013) Raman spectroscopic study of the hydroxy-phosphate mineral plumbogummite PbAl3(PO4)2(OH, H2O)6. Spectrochim Acta A: Molecul Biomolec Spectrosc 103: 431-434
http://doi.org/10.1016/j.saa.2012.07.057

Fuller, CC, Piana MJ, Bargar, JR, Davis JA, Kohler M (2002) Evaluation of apatite materials for use in permeable reactive barriers for the remediation of uranium-contaminated groundwater. In: Handbook of Groundwater Remediation Using Permeable Reactive Barriers. New York: Academic Press: pp 255-280

Gui D, Zhang Y, Li H, Shu J, Chen L, Zhao L, Diwu J, Chai Z, Wang S (2022) Developing a unique hydrogen-bond network in a uranyl coordination framework for fuel cell applications. Inorg Chem 61(20): 8036-8042
http://doi.org/10.1021/acs.inorgchem.2c00844

Gurzhiy VV, Kasatkin AV, Chukanov NV, Plášil J (2024) Uramphite, (NH4)(UO2)(PO4)· 3H2O, from the second world occurrence, Beshtau uranium deposit, Northern Caucasus, Russia: crystal-structure refinement, infrared spectroscopy, and relation to uramarsite. Amer Miner in press. https://doi.org/10.2138/am-2024-9313
http://doi.org/10.2138/am-2024-9313

Heyns AM, Venter MW, Range KJ (1987) The vibrational spectra of NH4VO3 at elevated temperatures and pressures. Z Naturforsch B, 42(7): 843-852
http://doi.org/10.1515/znb-1987-0709

Howe AT, Shilton MG (1980) Studies of layered uranium (VI) compounds. IV. Proton conductivity in single-crystal hydrogen uranyl phosphate tetrahydrate (HUP) and in polycrystalline hydrogen uranyl arsenate tetrahydrate (HUAs). J Solid State Chem 34(2): 149-155

Kampf AR, Plášil J, Olds TA, Nash BP, Marty J (2018a) Ammoniozippeite, a new uranyl sulfate mineral from the Blue Lizard Mine, San Juan County, Utah, and the Burro Mine, San Miguel County, Colorado, USA. Canad Mineral 56: 235-245
http://doi.org/10.3749/canmin.1800002

Kampf AR, Plášil J, Kasatkin AV, Marty J, Čejka J (2018b) Markeyite, a new calcium uranyl carbonate mineral from the Markey mine, San Juan County, Utah, USA. Mineral Mag 82(5): 1089-1100
http://doi.org/10.1180/minmag.2017.081.085

Kaňka J (1959) Plán úseku Nová Ves s výsledky průzk. prací za r. 1959. MS DIAMO

Kraus W, Nolze G (1996) POWDER CELL - a program for the representation and manipulation of crystal structures and calculation of the resulting X-ray powder patterns. J Appl Crystallogr 29: 301-303
http://doi.org/10.1107/S0021889895014920

Krivovichev SV, Plášil J (2013) Mineralogy and crystallography of uranium. In: Burns PC, Sigmon GE (eds) Uranium: From Cradle to Grave. Mineralogical Association of Canada Short Courses 43: pp 15-119

Libowitzky E (1999) Correlation of O-H stretching frequencies and O-H...O hydrogen bond lengths in minerals. Monatsh Chem 130: 1047-1059
http://doi.org/10.1007/BF03354882

Marković M, Pavković N, Pavković ND (1988) Precipitation of NH4UO2PO4·3H2O -solubility and structural comparison with alkali uranyl (2+) phosphates. J Res Natl Bur Stand 93: 557-563
http://doi.org/10.6028/jres.093.148

Martinez RJ, Beazley MJ, Sobecky PA (2014) Phosphate mediated remediation of metals and radionuclides. Adv Ecol 2014: 1-14
http://doi.org/10.1155/2014/786929

Mehta VS, Maillot F, Wang Z, Gatalano JG, Giammar DE (2013) Effect of co-solutes on the products and solubility of uranium(VI) precipitated with phosphate. Chem Geol 364: 66-75
http://doi.org/10.1016/j.chemgeo.2013.12.002

Morosin B (1978) Hydrogen uranyl phosphate tetrahydrate, a hydrogen ion solid electrolyte. Acta Crystallogr B34(12): 3732-3734
http://doi.org/10.1107/S0567740878011991

Nakamoto K (2009) Infrared and Raman spectra of inorganic and coordination compounds Part A: Theory and applications in inorganic chemistry. John Wiley and Sons Inc. Hoboken, New Jersey, pp 1-1122

Nekrasova ZA (1957) Hydrous phosphate of uranyl and ammonium (uramphite) - NH4(UO2)(PO4).3H2O. Vopr Geol Urana (Problems of uranium geology). Atomizdat, 67-72 (in Russian)

Novitskiy GG, Komyak AI, Umreyko DS (1981) Uranyl compounds, Vol 2: Atlas of spectra. Beloruss State University Minsk, pp 1-216 p (in Russian)

Ohwada K (1976) Infrared spectroscopic studies of some uranyl nitrate complexes. J Coord Chem 6: 75-80
http://doi.org/10.1080/00958977608079889

Ondruš P (1993) ZDS - A computer program for analysis of X-ray powder diffraction patterns. Materials Science Forum, 133-136, 297-300, EPDIC-2. Enchede
http://doi.org/10.4028/www.scientific.net/MSF.133-136.297

Pekov IV (1998) Minerals first discovered on the territory of the former Soviet Union. Ocean Pictures, Moscow, pp 1-369

Pham-Thi M, Colomban P (1985) Cationic conductivity, water species motions and phase transitions in H3OUO2PO4· 3H2O (HUP) and mup related compounds (M+= Na+, K+, Ag+, Li+, NH4+). Solid State Ionics 17(4): 295-306
http://doi.org/10.1016/0167-2738(85)90074-8

Plášil J (2014) Oxidation-hydration weathering of uraninite: the current state-of-knowledge. J Geosci 59(2): 99-114
http://doi.org/10.3190/jgeosci.163

Plášil J, Buixaderas E, Čejka J, Sejkora J, Jehlička J, Novák M (2010) Raman spectroscopic study of the uranyl sulphate mineral zippeite: low wavenumber and U-O stretching regions. Anal Bioanal Chem 397: 2703-2715
http://doi.org/10.1007/s00216-010-3577-z

Plášil J, Hauser J, Petříček V, Meisser N, Mills SJ, Škoda R, Fejfarová K, Čejka J, Sejkora J, Hloušek J, Johannet J-M, Machovič V, Lapčák L (2012) Crystal structure and formula revision of deliensite, Fe[(UO2)2(SO4)2(OH)2](H2O)7. Mineral Mag 76(7): 2837-2860
http://doi.org/10.1180/minmag.2012.076.7.14

Pouchou J, Pichoir F (1985) „PAP“ (φρζ) procedure for improved quantitative microanalysis. In: Armstrong JT (ed): Microbeam Analysis:. San Francisco Press. San Francisco, pp 104-106

Sejkora J, Dolníček Z, Plášil J (2023) Ammoniozippeite from the Jáchymov ore district, Krušné hory Mountains (Czech Republic) - description and Raman spectroscopy. Bull Mineral Petrolog 31(1): 1-9
http://doi.org/10.46861/bmp.31.001

Sidorenko GA, Chukanov NV, Chistyakova NI, Bebeshko GI, Zadov AE, Naumova IS (2007) Uramarsite (NH4, H3O)2(UO2)2(AsO4, PO4)2·6H2O: A new mineral of the metaautunite group. Dokl Earth Sci 415A(6): 965-969
http://doi.org/10.1134/S1028334X0706030X

Shilton MG, Howe AT (1977) Rapid H+ conductivity in hydrogen uranyl phosphate-A solid H+ electrolyte. Mater Res Bull 12(7): 701-706

Shilton MG, Howe AT (1980) Studies of layered uranium (VI) compounds. III. Structural investigations of hydrogen uranyl phosphate and arsenate tetrahydrates below the respective transition temperatures of 274 and 301° K. J Solid State Chem 34(2): 137-147

Zikmund J, Kotek S (1962) Zpráva o geologickém mapování 1 : 10 000 v okolí Mníšku a Nové Vsi v r. 1961. Geologický průzkum, závod VIII Příbram. Unpublished final report (in Czech), ČGS - Geofond, Praha, pp. 1-38.

Uramarsite - Mindat.org. Accessed on February 20, 2024 at https://www.mindat.org/min-28919.html
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